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Ultrahigh-average-power diode-pumped Nd:YAG and Yb:YAG lasers

机译:超高平均功率二极管泵浦Nd:YAG和Yb:YAG激光器

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摘要

Yttrium aluminum garnet (YAG) possesses thermal and mechanical properties that vary significantly with temperature. We show that when temperature variations are accounted for the simple scaling relationships traditionally used for high-average-power performance predictions fail. We have also found that for room temperature and below, and with uniform heat deposition in a rod, nonquadratic radial temperature profiles result and the magnitude of the thermally induced stresses are seriously underestimated. New nonlinear scaling relationships are presented that properly account for YAG materials property variations with temperature. These results are applied to diode-pumped Nd:YAG and Yb:YAG lasers operating at room temperature and 77 K; we show that significant increases in average power output are possible by operating Nd:YAG and Yb:YAG lasers at 77 K.
机译:钇铝石榴石(YAG)具有随温度变化很大的热和机械性能。我们表明,当考虑到温度变化时,传统上用于高平均功率性能预测的简单比例关系就失败了。我们还发现,对于室温及以下的温度,以及棒中均匀的热量沉积,会导致非二次径向温度分布,并且严重低估了热诱导应力的大小。提出了新的非线性比例关系,这些关系正确地说明了YAG材料随温度变化的特性。这些结果应用于在室温和77 K下工作的二极管泵浦Nd:YAG和Yb:YAG激光器;我们显示,通过在77 K的功率下运行Nd:YAG和Yb:YAG激光器,平均功率输出可能会显着增加。

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